Introduction

♦ Car track is experiment apparatus that can easily perform most kinetic experiments for junior & senior high school. The apparatus setup varies with experiments so that setup methods and apparatus required are changing. It can stimulate students’ imagination and innovation.
Features
♦ It is solid, light, easy to assemble, variable and disassemble for storage.
Configuration
|
No. |
Name |
Qty. |
Remark |
|
1 |
Mini L-shaped holder | 1set |
|
|
2 |
Multi-function track (120 cm) | 1pcs |
Black |
|
3 |
Small cart | 1pcs |
Ring at the front M4*10 lead seal screw |
|
4 |
L-shaped holder | 2pcs |
|
|
5 |
Wide L-shaped holder | 1pcs |
|
|
6 |
L-shaped pulley components | 1set |
Plastic components |
|
7 |
Weight (2g) | 5pcs |
|
|
8 |
Hook weight (10g) | 1pcs |
|
|
9 |
Hook weight (20g) | 1pcs |
|
|
10 |
Hook weight (20g) | 3pcs |
|
|
11 |
Lobster clamp | 2pcs |
Same as Force Composition and Resolution |
|
12 |
String | 1roll |
|
|
13 |
U-shaped light barrier | 1pcs |
Black 3mm thick |
|
14 |
Small bucket | 1pcs |
Mould piece. black. ABS |
|
15 |
Bumper components | 1set |
Mould piece. black. ABS |
|
16 |
U-shaped Pulley components | 1set |
Mould piece. black. ABS |
|
17 |
Fastener | 1set |
|
|
18 |
Plum screw (M6*32mm) | 1pcs |
Fixing component for motion sensor |
| 19 | Plum screw (M6*15mm) | 1pcs |
Fixing component for photogate |
|
20 |
Hexagonal screw (M6*35mm) | 1pcs |
Internal connector for T-shaped groove |
|
21 |
Hexagonal screw (M6*20mm) | 5pcs |
Internal fixing component for T-shaped groove |
|
22 |
Hand screw (M4*16mm) | 1pcs |
Fix light barrier on small cart |
|
23 |
Hand screw (M4*12mm) | 2pcs |
Fix pulley on photogate, photogate on bumper components. |
| 24 | Threaded rod and nut (M4*45mm) | 1pcs | Fix weight on the small cart |
|
25 |
Wing nut (M6) | 6pcs |
Use with M6 hexagonal screw |
|
26 |
Small wheel | 2pcs |
For spare use |
|
27 |
Wing screw (M5*15) | 1pcs |
Fastener joint to holder |
Typical Experiment
Experiment Set-up figure
- fig.1 experiment set-up
Typical experiment
♦ Motion diagram for uniform variable rectilinear motion
- fig. motion-time
♦ Velocity diagram of uniform variable rectilinear motion.
- fig.3 speed-time
♦ Explore how acceleration is influenced by pulling force and mass.
- fig.4 acceleration-pull force
- fig.5 acceleration-mass
Instruction Manual
Link: Instruction Manual【TP2033_Car Track】_ENG









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